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Effect of carbonate precipitating bacteria on strength and hydraulic characteristics of loess soil

机译:碳酸盐沉淀细菌对黄土土壤强度和水力特性的影响

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Microbial-induced calcite precipitation (MICP) is one of the environmentally friendly techniques that has recently become popular amongst geotechnical engineers. Two bacterial species ofBacillusfamily, i.e.,B. pasteuriiandB. megateriumhave been used to improve the loess soil properties. A set of unconfined compressive, permeability, ultrasonic, and collapse potential tests have been applied to assess the characteristics of natural soil compared to those of MICP-treated ones. The effects of curing time (1, 3, and 7 days), bacterial optical density (OD = 0.5, 1, and 1.5), and soil density (13, 14, and 15kN/m(3)) have been investigated. Results indicate that biological enhancement has improved the engineering properties of the loess soil. MICP-treated soil usingB. megateriumprovides higher strength improvement ratios (1.15-4.4 times) rather thanB. pasteurii-treated samples (1.05-3.4 times). Correspondingly, specimens containingB. megateriumhave greater permeability reduction ratios (3.9-93.7%) compared with those ofB. pasteuriiones (2-95%). Moreover, scanning electron microscope (SEM) analysis has been employed to confirm the findings. It is worth noting that various bacteria concentrations, curing periods, and soil densities can affect the stress-strain curve considerably. The results indicated that MICP reduced the collapse potential between 24 and 54.8% and increased the longitudinal wave velocity between 1.1 and 2.4 times more than the untreated soil.
机译:微生物诱导的方解石沉淀(MICP)是最近在岩土工程师中受欢迎的环保技术之一。两种细菌种类的赤霉素家族,即,b。 Pasteuriandb。 MegaTiumHave被用来改善黄土土壤性质。已经应用了一系列无束缚的压缩,渗透性,超声波和塌陷电位测试,以评估与MICP处理的麦克风处理相比的天然土壤的特征。已经研究了固化时间(1,3和7天),细菌光密度(OD = 0.5,1和1.5)的影响,以及土密度(13,14和15kn / m(3))。结果表明,生物增强改善了黄土土壤的工程性质。 MICP处理的土壤使用了。 MegaTiumProvides更高的强度改善比率(1.15-4.4次)而不是。巴氏疗法处理的样品(1.05-3.4次)。相应地,含有的标本。与人类相比,MegaTiumHave更高的渗透率降低(3.9-93.7%)。巴氏尿精(2-95%)。此外,已经采用扫描电子显微镜(SEM)分析来确认调查结果。值得注意的是,各种细菌浓度,固化时段和土壤密度可以显着影响应力 - 应变曲线。结果表明,MICP减少了24%和54.8%之间的塌陷电位,比未处理的土壤增加1.1至2.4倍之间的纵向波速。

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